MIME-Version: 1.0 Content-Type: multipart/related; boundary="----=_NextPart_01C945D9.9675C490" Tento dokument je webová stránka tvořená jedním souborem, rovněž nazývaná soubor webového archivu. Zobrazí-li se tato zpráva, znamená to, že prohlížeč nebo editor nepodporuje soubory webových archivů. Stáhněte si prohlížeč, který podporuje webový archiv, například aplikaci Windows® Internet Explorer®. ------=_NextPart_01C945D9.9675C490 Content-Location: file:///C:/2B3A5638/Aopak2r1t08.htm Content-Transfer-Encoding: quoted-printable Content-Type: text/html; charset="us-ascii" Repetition & population genetics

Obsah této prezentace pravděpodobně nebude prohlížeč schopen správně zobrazit.

Chcete-li i přesto pokračovat, klepněte sem.

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‹#›
------=_NextPart_01C945D9.9675C490 Content-Location: file:///C:/2B3A5638/Aopak2r1t08_soubory/pres.xml Content-Transfer-Encoding: quoted-printable Content-Type: text/xml; charset="utf-8" ------=_NextPart_01C945D9.9675C490 Content-Location: file:///C:/2B3A5638/Aopak2r1t08_soubory/slide0001.htm Content-Transfer-Encoding: quoted-printable Content-Type: text/html; charset="us-ascii" Repetition & population genetics
2nd year, winter semester
1st=  week 1.10. - 5.10.2006
=
=
REPETITION = =
SELECTED TASKS of summer semester
1
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REPETITION 
SELE= CTED TASKS of summer semester
=
=
1. Nondisjunction = in Down, Turner, and Klinefelter syndrome
2. Evaluation of karyotype with aberration
3. Linkage
= 3;
4. Estimates of gene frequencies
2
Introduction to 
POPULATION GENETICS
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= 1. Nondisju= nction in Down, Turner, and Klinef= elter syndrome
=
=
p. 80/Task 6e, a, b (preserve this order)
Remaining c) and d) - syndromes XXX and supermale – home w= ork, as selfstudy! <= /span>
N.B.: Fill in all possibilities of the nondisjunction events for a particular syndrome co= uld originate. T= his is asked in the text, e= xactly as in the final exam test. = 3;
3
------=_NextPart_01C945D9.9675C490 Content-Location: file:///C:/2B3A5638/Aopak2r1t08_soubory/slide0081.htm Content-Transfer-Encoding: quoted-printable Content-Type: text/html; charset="us-ascii" Repetition & population genetics
General schedule of  disjunction
of chromosomes in the meiosis<= br> and fertilisation=
4
normal gamete
zygote
normal gamete of the second parent
No.No.
or XX
or XY
No.
No.
No.
Normal karyotype
Germinal cell
(pair of chromosomes)
After the meiosis I=
(single chromosome)
After the meiosis II
(monochromatidal chromosome)
No. No.
Chromatid disjunction =
in meiotic division II.
No.
No.
Chromosome disjunction
in meiotic division I.
No.
No.
No.
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General schedule of nondisjunction
(principle, examp= le)
5
aberrant
gamete
zygote
normal= gamete of the second parent
(monosomic)<= /div>
cytogenetic diagnosis
No.
No. No.
No. No. No.
No.No.
or XX
or XY
No.
No.
No.
No.
No. No.
Chromatid nondisjunction <= /b>
in meiotic division II.
Germ cell
(pair of chromosomes)
After the meiosis I=
(single chromosome)
After the meiosis II
(monochromatidal chromosome)
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file:///C:/2B3A5638/Aopak2r1t08_soubory/slide0082.htm Content-Transfer-Encoding: quoted-printable Content-Type: text/html; charset="us-ascii" Repetition & population genetics
= 6e)  = Down syndrom= e (simple trisomy)
Nondisjunction in the meiosis I
in the father or in the mother=
6
aberrant gamete=
zygote
normal gamete of the second parent (monosomic)
21 21
21 21
21 21
21 21
21 21 21
21
47,XX,+2147,XY,+21
21 21
Chromosome nondisjunction =
in meiotic division I.
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7
= 6e)  = Down syndrome (simple trisomy)
Nondisjunction in the meiosis II
in the father or = in the mother
zygote
21 21
21
21
21 21
21 21
21 21 21
21
21
21
47,XX,+2147,XY,+21
aberrant gamete=
normal gamete of the second parent (monosomic)
Chromatid nondisjunction <= /b>
in meiotic division II.
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6a)  = Turner syndrome
Nondisjunction in the paternal meiosis I
X Y
X Y
8
zygote
X Y
X Y
= ;
X
X
= ;
= ;
45,X
aberrant gamete=
mother’= s normal gamete (monosomic)
Chromosome nondisjunction =
in meiotic division I.
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9
6a)  = Turner syndro= me
Nondisjunction in the ma= ternal
meiosis I
zygote
X X
X X
X X
X
X
= ;
45,X
X X
aberrant gamete=
father&= #8217;s normal gamete (monosomic)
Chromosome nondisjunction =
in meiotic division I.
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6a)  = Turner syndrome
Nondisjunction in the paternal meiosis II <= /div>
10
X X
X
Y Y
X
zygote
X Y
X
Y
X
X
= ;
45,X
Y
Y
!! or:
aberrant = gamete=
mother’= s normal gamete (monosomic)
Chromatid nondisjunction
in meiotic division II.
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6a)  Turner syndrome
Nondisjunction in the ma= ternal
meiosis II
11
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Chromatid nondisjunction <= /b>
in meiotic division II.
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6b)  Klinefelter syndrome
Nondisjunction in the paternal
meiosis I
12
aberrant gamete=
mother’= s normal gamete (monosomic)
zygote
X Y
X Y
= ;
X Y
X Y
X X Y
X
= ;
= ;
47,XXY
X Y
Chromosome nondisjunction =
in meiotic division I.
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6b)  = Klinefelter<= span lang=3DCS style=3D'font-size:63%;mso-fareast-language:ZH-CN'> syndrome
Nondisjunction in the ma= ternal
meiosis I
13
X X
zygote
X X
X X
X X
X X Y
Y
47,XXY <= /div>
X X
aberrant gamete=
father&= #8217;s normal gamete (monosomic)
Chromosome nondisjunction =
in meiotic division I.
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6b)  = Klinefelter<= span lang=3DCS style=3D'font-size:63%;mso-fareast-language:ZH-CN'> syndrome
Nondisjunction in the maternal
meiosis II
14
X X
X
X
zygote
X X
X
X
X X
X X Y
Y
47,XXY <= /div>
aberrant gamete=
father&= #8217;s normal gamete (monosomic)
Chromatid nondisjunction <= /b>
in meiotic division II.
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2. Evaluation of k= aryotype with=  aberration
=
=
a) Task 9a, b/ p. 82
b) Task 16/ p. 88
c) Segregation of chromosomes to gametes
d) m. Down – conclusion of recurrent risk<= /div>
3D"HM00363_"
15
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Karyotype evaluation - General procedure:
=
=
- total number of chromosomes (46, 45, 47, other)
- heterochromosomal complement (XX, XY, other= )
= 226; - completeness of pairs (disomy, monosomy)
= 226; - surplus (redundant) chromosomes (trisomy, markers)
<= span style=3D'mso-special-format:nobullet;display:none'>• - structural aberrations
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------=_NextPart_01C945D9.9675C490 Content-Location: file:///C:/2B3A5638/Aopak2r1t08_soubory/slide0017.htm Content-Transfer-Encoding: quoted-printable Content-Type: text/html; charset="us-ascii" Repetition & population genetics
= a) Task 9a, b/ p. 82
Solutio= n: Turner syndrome        Formula: 45,X
3Dxok
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The difference between cytogenetic and clinical diagnosis
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18
Clinical diagnosis
Cytogenetic diagnosis<= /div>
Solution: Turner syndrome     Formula: = 45,X
Not all individuals expressing the symptoms
of a concrete (= here e.g. Turner) syndrome
have to have the same cytogenetic finding (formula, annotation, diagnosis). But all individuals sharing the same cytogenetic diagnosis usually express the same complex phenotype (syndrome, disease).
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= b) Task 16/ p. 88
<= i>Annotation according to<= /i> ISCN 1995: 45,XY,der(14;21) <= /span>
= Annotation according to<= /i> ISCN 200<= /b>5: 45,XY,der(14;21)        = ;            &n= bsp;           or 45,XY,rob(14;21)
Solution: carrier of balanced translo<= /span>cation 14;21
19
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c) segregation of chromosomes to gametes
in previous = individual
20
45,XY,rob(14;21)
21
14
14
21
14
21
21
21
14
14
14
14
21
21
NORMAL
M. DOWN
33,3% = ;
LETHAL
BALANCED =
TRANSLOCATION= = ;
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21
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d) m. Down – co= nclusion of reccurent risk = (expected = chromosomal findings in parents and reccurent risk in dependence on finding in m. Down affected individual)
21
MORBUS  DOWN
PROBAND
PARENTS
RISK
47,XX/Y,+21
46,XX/Y 
46,XX/Y 
> THAN POPULATION
dependence on maternal age
46,XX/Y,der(21;21),+21
45,XX/Y ,der(21;2= 1)
46,XX/Y 
100% THEORETICAL
100% EMPIR= ICAL
46,XX/Y,der(D;21),+21
46,XX/Y+21,der(21;22)
45,XX/Y ,der(D;21= )
45,XX/Y ,der(21;2= 2)
46,XX/Y 
33,3% THEORETICAL
EMPIRICAL:
 cca 5% - father (carrier)
 cca 15% - mother (carrier)
46,XX/Y,der(D;21),+21
46,XX/Y,+21,der(21;G)
46,XX/Y 
46,XX/Y 
NEW MUTATION
NONPATERNI= TY
47,XX/Y,+21
47,XX/Y,+21/46,XX/Y 
46,XX/Y 
MOSAICISM – <= /span>depends on ratio of= the cell lines with normal and aberrant number of chromosome 21
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3. Linkage
=
=
a) Task 2= /p. 99= back-cross in trans configuration, gametogenesis and phenotype frequ= encies
b) Task <= /span>10/p. 1= 04linkage in genealogy (nail-patella s= y)
22
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Demons= tration:
back-cross= in trans = phase (corresponds to Task 2/p. 99), repetition of= production of gametes and phenotype frequencies
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b) Task 10/p. 104linkage in genealogy (nail-patella sy)
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Answers:
=
=
a) A= D (g= ive allele= s names, = e.g. NPSmut a NPS+),
b) y= es (Note: loc= alization known today, 9q34),
c) homologo= us chromosomes (haplotypes) in grand-father I/1 are 0 NPS+ / 0 NPS+,= and in g= rand-mother I/2 are B= NPSmu= t / 0 = NPS+<= /span>,
d) r= ecombinat= ion is present in sons II/5, II/8 a II/14,= a= s well as in grand-daughter <= span style=3D'mso-tab-count:1;width:1.31%'> III/3,
e) r= ecombination ratio is 4/16 =3D 0,25, i.e. = 25 % of rec= ombinations between the genes,
f) y= es – recombination = p= resent in III/3 originated in m= eiosis in m= a= n II/3.
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B0
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B0
B0
B0
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B0
00
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A0
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A0
I
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NPS+ = ;
0 = ;
B = ;
NPSmut = ;
NPS+ = ;
0 = ;
0 = ;
NPS+ = ;
NPS+ = ;
NPS+ = ;
0 = ;
B = ;
NPS+ = ;
0 = ;
0 = ;
NPSmut = ;
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Fig. No. VII/2
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Content-Location: file:///C:/2B3A5638/Aopak2r1t08_soubory/slide0027.htm Content-Transfer-Encoding: quoted-printable Content-Type: text/html; charset="us-ascii" Repetition & population genetics
4. Introduction to population genetics R= 11; estimates of gene frequencies
=
=
= 226;a) Task = 1= /p.139 freq= uencies of alleles in MN s= yste= m
= 226;b) Task = 4= /p. 140estimates of fre<= span style=3D'font-size:85%;font-style:normal;color:yellow;mso-color-index:3'>q= uencies of deleterious (recessive) all= eles
= 226;The lecture has taken place in t= he last semester – see short introductory text and formulas [3] a<= span style=3D'font-size:85%;font-style:normal'>nd [4] on pp. 138 and 139.
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1
2
2
)
(
)
(
2
)
(
=3D= 3;
+= 3;
+= 3;
aa
Aa
AA= 3;
q
pq
p
Castle-Hardy-Weinberg law
=
=
Applied on panmictic population under the assumption = of limiting conditions
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=
=
Basic relation for a system with two alleles in a given gene
1= 3;
)= 3;
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=3D
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q= 3;
p= 3;
Castle-Hardy-Weinberg law
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(= 3;
a=
q= 3;
1= 3;
)= 3;
(= 3;
=3D
-
A= 3;
p= 3;
approximation
1
)
(
A
p
2
)
(
=3D= 3;
Aa
pq
q
2
, if
approaches
.
33
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a) Task 1= /p.139 = 211; frequencies of alleles in MN system
Phenotype
Number of persons
M
406
MN
744
N
332
34
------=_NextPart_01C945D9.9675C490 Content-Location: file:///C:/2B3A5638/Aopak2r1t08_soubory/slide0029_image082.gif Content-Transfer-Encoding: base64 Content-Type: image/gif R0lGODlhCgHhAHcAMSH+GlNvZnR3YXJlOiBNaWNyb3NvZnQgT2ZmaWNlACH5BAEAAAAALAAAAAAJ Ad8AgAAAAP///wL/RI6py+0Po5y02ouz3s/wD4biSJYmB6TqyrbuC8fyTNe2e9z6zve+H/D8hsSi ERc8KpfMm6IJjTZz0qrVGKRet1yZtgsOtxLicvdrTl+zSbWbiX7Lj8+5fRi/63nsvd/Z9idYQzZo iHSYCNOnqJjXaFgHGRk4mchoKfiY6VfI2Vn5+YcperdZKieJOne66kbq+hoam4pAW3urB5sr1sp7 5vnbOyvcK1Q8jCzrqwxH3Ly1Cy3FPO1sa732nB0lzb1U/Y2FLQ4VXo53jO68XqXaPg5PrS5fdF4P eI+/uL3f4+0PUEA6wQbu0GfwBcCEXvoxpFHwIUSHEmMsrDiGIsaM/+Q2NvR4kB5IhRpHpohocgXC jRdHrqz4LqXKkiZbgnwJs6PMmTtn2PSI82HMnkGFiux5FOnMov6YJvzJkuZNlDudGoSK0epAqjK1 BsSaUylJnUi9Nk1aVepUs+3Y4mNzIq7cuXTr2r2LN6/evXzjou2qFihZooFZ/k3pVt7QtGIVHq5Z OOtgxo3HPHYZWeJiwJUtJy73GR5XxJk1X57aeWnob6vXgdVcWuhkzqlVvJZd++RoyLlPnhbc20Pr bMNB/47aezPp4LcZFhe3GzPz45KTR0ednHpY68+hdefW/Gls8bOXZ/+uDL2168DPj9+n3jt75O47 x5d//1f+9Nphc//fnwuAxYR31XsFCkgLgvr1h1tuyvFWX2UK8jJfdRE2NuEtD0p3oVgZalgehA4y 6JyBX1W43YgflrJiLCj616FSLa6yIXYqmqgYjk2FyOGN9un41osN+ighkEHOyAmSqBC4lZE58mhj bUyeyByU7RGJoZOiCVnidEpa8qUoXIrnpZbQmenamAWW+WOVYULyZpIkkumgmk2yWaSbaIK3JzpT 7vhfn+sJCt2ca/7XZoxlEcqnlfRh6SGjjUqaHqXrGXpnnY5aCKmMlk5jJ5WKEhZoop0uqqepUmIq qpShAjoqZZp+KkycmfwJH62VbpriqrZeouuuwQY47ICswuoqrzDnnkoqonnGSluyvx4yLZzH5prq s8zKmlqNV/pabILh6qfskOCq+mO5XUJr3qzo2ndtkKVqey693apL57bR3ovvofq2K+27EsZbT7WO vIotuyIGbC+8BmsyLrH9ZvrvwvxGTCPGGhKc47xZ4vmxsyFX3OPFGrN4soscb5ntyPW6nO7Do6Ts Cq7yihwpyDnPSnOSPS+5cls/oywzKDp76vHOJEd5scAYBp1m0kgrXHLTDQ9c9B5ZQzxxqy8rzTDM Dg89ydYzd43s11O7e/XTZtvxttYI33xjX3bfjXfeIwind99+/w04AAUAADs= ------=_NextPart_01C945D9.9675C490 Content-Location: file:///C:/2B3A5638/Aopak2r1t08_soubory/slide0101.htm Content-Transfer-Encoding: quoted-printable Content-Type: text/html; charset="us-ascii" Repetition & population genetics
‹#›
35
=
=
Solution:=
•<= /span>d= irect calculation of t= he freque= ncy= of one = o= f allele= s according to f= ormula [3] on p. 138
•<= /span>C= alculation of the frequency of the second <= span style=3D'mso-spacerun:yes'>  allele= q(a) as addition to 1.= 3;
Task 1/= p.139 frequencies of alleles in MN system
 in the sample
individual= s
all
number of<= /span>
2
)
(
tes
of heteroz= ygo
number 
)
(
 
of homozyg= otes
number 
2
´= 3;
+
´= 3;
=3D
Aa
AA
p(A)
35
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Task 1/p.139 = frequencies of alleles in MN system
0
744
812
alleles M
1 556
1 408
1 482
Total
664
744
0
alleles N
332
N
744
406
persons
Number of
MN
M
phenotype
36
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Task 4/p. 140 – estimates of frequencies of deleterious (recessive) alleles
Disease
Abbrev.
population
frequency
phenylketonuria
PKU
1/8100
cystic fibrosis (mucoviscidosis)
CF
1/2500
37
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= Task 4/p. 140 – estimates of frequencies of deleterious (recessive) alleles
=
=
Solution:= e= stimate calculated = a= ccording to formula [= 4] on p. 139 (top),
38
 
frequency in population
number of all individuals in the sample
number of recessive homozygotes
=3D
=3D
=3D
q=
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<= span style=3D'position:absolute;top:4.6%;left:.18%;width:100.0%;height:7.31%'><= span lang=3DEN-US style=3D'font-size:74%'>Task 4/p. 140 – estimates of frequencies of deleterious (recessive) alleles
estimate
49/50 =3D 1
89/90 =3D 1
p =3D 1 - q
1/50
1/90
q
1/2500
1/8100
Freque= ncy in popula= tion
CF
PKU
diseas= e
2pq =3D 2q=
2 x 1 x 1/50
=3D 1/25
2 x 1 x 1/90
=3D 1/45
˙
˙
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39
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Home study of population genetics required no other lecture with <= /span>this topic will be.
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UpdNavPane( sldIndex ){ if(gNavLoaded) PPTNav.UpdNav() } function UpdOtNavPane(){ if(gOtlNavLoaded) PPTOtlNav.UpdOtlNav() } function UpdOtlPane(){ if(gOtlLoaded) PPTOtl.UpdOtl() } function SetHasNts( fVal ) { if( gHasNts !=3D fVal ) { gHasNts=3DfVal UpdNavPane() } } function ToggleOtlText() { gOtlTxtExp=3D!gOtlTxtExp UpdOtlPane() } function ClearMedia() { if (PPTSld.pptSound) PPTSld.pptSound.loop =3D 0; } function FullScreen() { if ( PPTSld.g_animUseRuntime ) PPTSld.document.body.pause(); ClearMedia(); var href =3D ( document.location.protocol =3D=3D 'mhtml:') ? FULLSCR_HREF = : FULLSCR_HREF+"#"+GetHrefObj(gCurSld).mSldHref; if(PPTNav.event.ctrlKey) { var w =3D (window.screen.availWidth * 1.0) / 2.0 var h =3D w * (PPTSld.g_origH * 1.0) / PPTSld.g_origW win =3D window.open( MHTMLPrefix+href,null,"toolbar=3D0,resizable=3D1,top= =3D0,left=3D0," + "width=3D"+ w + ",height=3D" + h ); if( win.document.body && PPTSld.g_animUseRuntime ) win.document.body.PPTSldFrameset=3Dwindow; } else { win =3D window.open( MHTMLPrefix+href,null,"fullscreen=3Dyes" ); if( win.document.body && PPTSld.g_animUseRuntime ) win.document.body.PPTSldFrameset=3Dwindow; } } function ToggleVNarration() { rObj=3DPPTSld.document.all("NSPlay") if( rObj && !PPTSld.g_animUseRuntime ) { if( (rObj.playState =3D=3D 1)||(rObj.playState =3D=3D 0) ) rObj.Play() else if( rObj.playState =3D=3D 2 ) rObj.Pause() else return; } else if( PPTSld.g_animUseRuntime ) { narObj =3D PPTSld.document.all("narrationID") if( narObj ) narObj.togglePause() } } function GetCurSldNum() { obj=3DGetHrefObj(gCurSld) if( obj.mOrigVis =3D=3D 1 ) return obj.mSldIdx else return gCurSld } function GetNumSlds() { if( GetHrefObj(gCurSld).mOrigVis =3D=3D 1 ) return GetSldList().mNumVisSlds; else return GetSldList().mList.length } function GetSldNum( href ) { for(ii=3D0; ii 1 ) PopSldList(); else if( !IsFramesMode() ) { if( gLoopCont ) GoToFirst() else EndShow() } } function GoToPrevSld() { ii=3DgCurSld-1 if( ii > 0 ) { obj=3DGetHrefObj(ii) while ( obj && ( obj.mVis =3D=3D 0 ) && ( ii>0 ) ) obj=3DGetHrefObj(--ii) if( ii =3D=3D 0 ) ii=3D1 GoToSldNum(ii) } } function GoToFirst(){ GoToSld( GetHrefObj(1).mSldHref ) } function GoToLast() { ii=3DGetSldList().mList.length if( ii !=3D gCurSld ) GoToSld( GetHrefObj(ii).mSldHref ) } function GoToSldNum( num ) { if( PPTSld.event ) PPTSld.event.cancelBubble=3Dtrue obj =3D GetHrefObj( num ) obj.mVis=3D1 gPrevSld=3DgCurSld gCurSld =3D num; PPTSld.location.replace(MHTMLPrefix+obj.mSldHref) if( IsFramesMode() ) { UpdNavPane(); UpdOtlPane(); UpdNtsPane() } } function GoToSld( href ) { if( PPTSld.event ) PPTSld.event.cancelBubble=3Dtrue GetHrefObj( GetSldNum(href) ).mVis=3D1 PPTSld.location.replace(MHTMLPrefix+href) } function SldUpdated( id ) { if( id =3D=3D GetHrefObj(gCurSld).mSldHref ) return gPrevSld=3DgCurSld gCurSld=3DGetSldNum(id) if( IsFramesMode() ) { UpdNavPane(); UpdOtlPane(); UpdNtsPane() } } function PrevSldViewed(){ GoToSld( GetHrefObj(gPrevSld).mSldHref ) } function HasPrevSld() { return ( gIsEndShow || ( gCurSld !=3D 1 && GetHrefO= bj( gCurSld-1 ).mVis =3D=3D 1 )||( GetCurSldNum() > 1 ) ) } function HasNextSld() { return (GetCurSldNum() !=3D GetNumSlds()) } function CloseWindow() { if( HideMenu() ) return; var event =3D PPTSld.event; if( !IsFramesMode() && event && (event.keyCode=3D=3D27 || event.keyCode=3D= =3D32 || event.type=3D=3D"click" ) ) window.close( self ); CatchNumKeys( self, event ); } function Unload() { gIsEndShow=3D0; } function SetupEndShow() { gIsEndShow=3D1; PPTSld.document.body.scroll=3D"no"; PPTSld.document.onkeypress=3DCloseWindow; PPTSld.document.onclick=3DCloseWindow; PPTSld.document.oncontextmenu=3D_CM; } function EndShow() { if( IsFramesMode() ) return if( PPTSld.event ) PPTSld.event.cancelBubble=3Dtrue doc=3DPPTSld.document var dir =3D doc.body.dir if( dir !=3D "rtl" ) dir =3D "ltr"; doc.open() doc.writeln('


' + ENDSHOW_MESG + '

') doc.close() } function SetSldVisited(){ GetSldList().mList[gCurSld-1].mVisited=3Dtrue } function IsSldVisited(){ return GetSldList().mList[gCurSld-1].mVisited } function hrefList( sldHref, visible, advDelay, advClk ) { this.mSldHref=3D this.mNtsHref =3D sldHref this.mOrigVis=3D this.mVis =3D visible this.mVisited=3D false this.mAdvDelay=3D advDelay this.mAdvOnClk=3D advClk } function SldList(arr,curSld,fEnd) { this.mCurSld =3D curSld; this.mList =3D new Array(); var idx =3D 1; for(ii=3D0;ii 0) { PushSldList(sldList,fEnd); gCurSld =3D 1; } else if( PPTSld.event ) PPTSld.event.cancelBubble=3Dtrue } function PushSldList(arr,fEnd) { var ii =3D gSldStack.length; gSldStack[ii] =3D new SldList(arr,gCurSld,fEnd); GoToSld( gSldStack[ii].mList[0].mSldHref ); } function PopSldList() { if (gSldStack[gSldStack.length-1].fEndShow) EndShow() else { gCurSld =3D gSldStack[gSldStack.length-1].mCurSld; gSldStack[gSldStack.length-1] =3D null; gSldStack.length--; var sldList =3D gSldStack[gSldStack.length-1]; GoToSld( sldList.mList[gCurSld - 1].mSldHref ); } } var custShowList=3Dnew Array(); function ImgBtn( oId,bId,w,action ) { var t=3Dthis t.Perform =3D _IBP t.SetActive =3D _IBSetA t.SetInactive=3D _IBSetI t.SetPressed =3D _IBSetP t.SetDisabled=3D _IBSetD t.Enabled =3D _IBSetE t.ChangeIcon =3D null t.UserAction =3D action t.ChgState =3D _IBUI t.mObjId =3D oId t.mBorderId=3D bId t.mWidth =3D w t.mIsOn =3D t.mCurState =3D 0 } function _IBSetA() { if( this.mIsOn ) { obj=3Dthis.ChgState( gHiliteClr,gShadowClr,2 ) obj.style.posTop=3D0 } } function _IBSetI() { if( this.mIsOn ) { obj=3Dthis.ChgState( gFaceClr,gFaceClr,1 ) obj.style.posTop=3D0 } } function _IBSetP() { if( this.mIsOn ) { obj=3Dthis.ChgState( gShadowClr,gHiliteClr,2 ) obj.style.posLeft+=3D1; obj.style.posTop+=3D1 } } function _IBSetD() { obj=3Dthis.ChgState( gFaceClr,gFaceClr,0 ) obj.style.posTop=3D0 } function _IBSetE( state ) { var t=3Dthis GetObj( t.mBorderId ).style.visibility=3D"visible" if( state !=3D t.mIsOn ) { t.mIsOn=3Dstate if( state ) t.SetInactive() else t.SetDisabled() } } function _IBP() { var t=3Dthis if( t.mIsOn ) { if( t.UserAction !=3D null ) t.UserAction() if( t.ChangeIcon ) { obj=3DGetObj(t.mObjId) if( t.ChangeIcon() ) obj.style.posLeft=3Dobj.style.posLeft+(t.mCurState-4)*t.mWidth else obj.style.posLeft=3Dobj.style.posLeft+(t.mCurState-0)*t.mWidth } t.SetActive() } } function _IBUI( clr1,clr2,nextState ) { var t=3Dthis SetBorder( GetObj( t.mBorderId ),clr1,clr2 ) obj=3DGetObj( t.mObjId ) obj.style.posLeft=3Dobj.style.posLeft+(t.mCurState-nextState)*t.mWidth-obj= .style.posTop t.mCurState=3DnextState return obj } function TxtBtn( oId,oeId,action,chkState ) { var t=3Dthis t.Perform =3D _TBP t.SetActive =3D _TBSetA t.SetInactive=3D _TBSetI t.SetPressed =3D _TBSetP t.SetDisabled=3D _TBSetD t.SetEnabled =3D _TBSetE t.GetState =3D chkState t.UserAction =3D action t.ChgState =3D _TBUI t.mObjId =3D oId t.m_elementsId=3D oeId t.mIsOn =3D 1 } function _TBSetA() { var t=3Dthis if( t.mIsOn && !t.GetState() ) t.ChgState( gHiliteClr,gShadowClr,0,0 ) } function _TBSetI() { var t=3Dthis if( t.mIsOn && !t.GetState() ) t.ChgState( gFaceClr,gFaceClr,0,0 ) } function _TBSetP() { if( this.mIsOn ) this.ChgState( gShadowClr,gHiliteClr,1,1 ) } function _TBSetD() { this.ChgState( gFaceClr,gFaceClr,0,0 ) this.mIsOn =3D 0 } function _TBSetE() { var t=3Dthis if( !t.GetState() ) t.ChgState( gFaceClr,gFaceClr,0,0 ) else t.ChgState( gShadowClr,gHiliteClr,1,1 ) t.mIsOn =3D 1 } function _TBP() { var t=3Dthis if( t.mIsOn ) { if( t.UserAction !=3D null ) t.UserAction() if( !t.GetState ) return if( t.GetState() ) t.SetPressed() else t.SetActive() } } function _TBUI( clr1,clr2,lOffset,tOffset ) { SetBorder( GetObj( this.mObjId ),clr1,clr2 ) Offset( GetObj( this.m_elementsId ),lOffset,tOffset ) } function Offset( obj, top, left ){ obj.style.top=3Dtop; obj.style.left=3Dle= ft } function SetBorder( obj, upperLeft, lowerRight ) { s=3Dobj.style; s.borderStyle =3D "solid" s.borderWidth =3D 1 s.borderLeftColor =3D s.borderTopColor =3D upperLeft s.borderBottomColor=3D s.borderRightColor =3D lowerRight } function GetBtnObj(){ return gBtnArr[window.event.srcElement.id] } function BtnOnOver(){ b=3DGetBtnObj(); if( b !=3D null ) b.SetActive() } function BtnOnDown(){ b=3DGetBtnObj(); if( b !=3D null ) b.SetPressed() } function BtnOnOut(){ b=3DGetBtnObj(); if( b !=3D null ) b.SetInactive() } function BtnOnUp() { b=3DGetBtnObj() if( b !=3D null ) b.Perform() else Upd() } function GetNtsState(){ return parent.gNtsOpen } function GetOtlState(){ return parent.gOtlOpen } function GetOtlTxtState(){ return parent.gOtlTxtExp } function NtsBtnSetFlag( fVal ) { s=3Ddocument.all.item( this.m_flagId ).style s.display=3D"none" if( fVal ) s.display=3D"" else s.display=3D"none" } function _BSetA_Border(){ b =3D gBtnArr[this.mObjId]; if( b !=3D null ) b.S= etActive() } function _BSetI_Border(){ b =3D gBtnArr[this.mObjId]; if( b !=3D null ) b.S= etInactive() } function _BSetP_Border(){ b =3D gBtnArr[this.mObjId]; if( b !=3D null ) b.S= etPressed() } function _BSetA_BorderImg() { b =3D gBtnArr[this.mBorderId] if( b !=3D null && this.mIsOn && !b.GetState() ) { obj=3Dthis.ChgState( gHiliteClr,gShadowClr,2 ) obj.style.posTop=3D0 } } function _BSetI_BorderImg() { b =3D gBtnArr[this.mBorderId] if( b !=3D null && this.mIsOn && !b.GetState() ) { obj=3Dthis.ChgState( gFaceClr,gFaceClr,1 ) obj.style.posTop=3D0 } } var gHiliteClr=3D"THREEDHIGHLIGHT",gShadowClr=3D"THREEDSHADOW",gFaceClr=3D"= THREEDFACE" var gBtnArr =3D new Array() gBtnArr["nb_otl"] =3D new TxtBtn( "nb_otl","nb_otlElem",parent.ToggleOtlPan= e,GetOtlState ) gBtnArr["nb_otlElem"] =3D new TxtBtn( "nb_otl","nb_otlElem",parent.ToggleOt= lPane,GetOtlState ) gBtnArr["nb_nts"] =3D new ImgBtn( "nb_nts","nb_ntsBorder",10,parent.ToggleN= tsPane ) gBtnArr["nb_nts"].SetActive =3D _BSetA_BorderImg; gBtnArr["nb_nts"].SetInactive =3D _BSetI_BorderImg; gBtnArr["nb_ntsBorder"] =3D new TxtBtn( "nb_ntsBorder","nb_ntsElem",parent.= ToggleNtsPane,GetNtsState ) gBtnArr["nb_ntsElem"] =3D new TxtBtn( "nb_ntsBorder","nb_ntsElem",parent.To= ggleNtsPane,GetNtsState ) gBtnArr["nb_prevBorder"] =3D gBtnArr["nb_prev"]=3D new ImgBtn( "nb_prev","n= b_prevBorder",30,parent.GoToPrevSld ) gBtnArr["nb_nextBorder"] =3D gBtnArr["nb_next"]=3D new ImgBtn( "nb_next","n= b_nextBorder",30,parent.GoToNextSld ) gBtnArr["nb_sldshw"]=3D new ImgBtn( "nb_sldshw","nb_sldshwBorder",18,parent= .FullScreen ) gBtnArr["nb_sldshwBorder"] =3D new TxtBtn( "nb_sldshw","nb_sldshwBorder",pa= rent.FullScreen,null ) gBtnArr["nb_sldshwBorder"].SetActive =3D _BSetA_Border; gBtnArr["nb_sldshwBorder"].SetInactive =3D _BSetI_Border; gBtnArr["nb_sldshwText"] =3D new TxtBtn( "nb_sldshw","nb_sldshwText",parent= .FullScreen,null ) gBtnArr["nb_sldshwText"].SetActive =3D _BSetA_Border; gBtnArr["nb_sldshwText"].SetInactive =3D _BSetI_Border; gBtnArr["nb_voice"] =3D gBtnArr["nb_voiceBorder"] =3D new ImgBtn( "nb_voice= ","nb_voiceBorder",18,parent.ToggleVNarration ) gBtnArr["nb_otlTxtBorder"] =3D gBtnArr["nb_otlTxt"]=3D new ImgBtn( "nb_otlT= xt","nb_otlTxtBorder",23,parent.ToggleOtlText ) gBtnArr["nb_ntsBorder"].m_flagId=3D "nb_nts" gBtnArr["nb_ntsBorder"].SetFlag =3D NtsBtnSetFlag gBtnArr["nb_otlTxt"].ChangeIcon=3D GetOtlTxtState var sNext=3D"Další",sPrev=3D"Předchozí",sEnd=3D"Kon= ec prezentace",sFont=3D"Arial",sArrow=3D"Šipka",sFreeform=3D"Voln&yacu= te; tvar",sRect=3D"Obdélník",sOval=3D"Ovál" function ShowMenu() { BuildMenu(); var doc=3DPPTSld.document.body,x=3DPPTSld.event.clientX+doc.scrollLeft,y= =3DPPTSld.event.clientY+doc.scrollTop m =3D PPTSld.document.all.item("ctxtmenu") m.style.pixelLeft=3Dx if( (x+m.scrollWidth > doc.clientWidth)&&(x-m.scrollWidth > 0) ) m.style.pixelLeft=3Dx-m.scrollWidth m.style.pixelTop=3Dy if( (y+m.scrollHeight > doc.clientHeight)&&(y-m.scrollHeight > 0) ) m.style.pixelTop=3Dy-m.scrollHeight m.style.display=3D"" } function _CM() { if( !parent.IsFullScrMode() ) return; 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